Cite this article:
Shen Man, Bai Yan-Kui, An Xing-Tao, Liu Jian-Jun. Symmetry and size effects on energy and entanglement of an exciton in coupled quantum dotsJ. Chin. Phys. B, 2013, 22(4): 047101.
| Shen Man, Bai Yan-Kui, An Xing-Tao, Liu Jian-Jun. Symmetry and size effects on energy and entanglement of an exciton in coupled quantum dotsJ. Chin. Phys. B, 2013, 22(4): 047101. |
Symmetry and size effects on energy and entanglement of an exciton in coupled quantum dots
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Abstract
We study theoretically the essential properties of an exciton in vertically coupled Gaussian quantum dots in the presence of an external magnetic field. The ground state energy of a heavy-hole exciton is split into four energy levels due to the Zeeman effect. For the symmetrical system, the entanglement entropy of the exciton state can reach a value of 1. However, for a system with broken symmetry, it is close to zero. Our results are in good agreement with previous studies. -
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